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The reaction follows Langmuir-Hinshelwood-Hougen-Watson mechanism involving weak adsorption of reactants and products.
Na+, in addition to advective dilution, could be depleted by weak adsorption.
The reaction follows a typical second order kinetics at a fixed catalyst loading with weak adsorption of both the species.
However, this weak adsorption had no significant effect on the nature of the ORR rate determining steps.
The iτ12 variation with the current density was attributed to a weak adsorption of the Zn II) ions.
The process involves a relatively weak adsorption of the alcohol substrates which, however, do not readily capture the photogenerated holes.
This case was related to weak adsorption behavior of poly N-methyl poly N-methyl on mild steel.
The results suggest a weak adsorption of the polymer coupled to the transfer towards the organic phase.
In addition, the very weak adsorption of methanol on the Mn/SnO2 surfaces favors the generation of gaseous methanol before further oxidation.
A kinetic model was built using Langmuir Hinshelwood Hougen Watson mechanism with weak adsorption of all species leading to a power law model.
From NO-TPD results, large desorption peak of oxygen was observed around 773 K suggesting that weak adsorption strength of O2 on BaO/Y2O3 catalyst.
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